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HORMONAL CONTROL OF GASTROINTESTINAL MOTILITY – SELF LEARNING, Lecture # 3, Page # 807 Chapter # 63

HORMONAL CONTROL OF GASTROINTESTINAL MOTILITY - SELF LEARNING SERIES # 3, Page # 807 Ch: # 63 Guyton physiology 15th Edition with Dr sheen
  • Gastrointestinal hormones are released into the portal circulation (portal blood).
  • They act on target cells that have specific receptors for each hormone.
  • Their effects continue even if all nerve connections between the site of release and the site of action are cut.
  • Table 63.1 summarizes:
    • The major gastrointestinal hormones.
    • Their actions.
    • The stimuli for their secretion.
    • The sites where they are secreted.
  • Several gastrointestinal hormones also control gastrointestinal secretion.
  • Most of these hormones also affect gastrointestinal motility.
  • Their effects on motility are usually less important than their effects on secretion.
  • The important motility effects are described below.

Gastrin

  • Gastrin is secreted by G cells in the antrum of the stomach.
  • It is released in response to:
    • Stomach distention
    • Protein digestion products
    • Gastrin-releasing peptide (GRP) released from gastric mucosal nerves during vagal stimulation
  • The main actions of gastrin are:
    • Stimulates gastric acid secretion
    • Stimulates growth of the gastric mucosa

Cholecystokinin (CCK)

  • CCK is secreted by I cells in the mucosa of the duodenum and jejunum.
  • It is released mainly in response to:
    • Fat digestion products
    • Fatty acids
    • Monoglycerides in the intestinal contents
  • CCK strongly contracts the gallbladder.
  • This releases bile into the small intestine.
  • Bile helps emulsify fats and allows their digestion and absorption.
  • CCK also moderately inhibits stomach contractions.
  • Therefore, stomach emptying slows, giving more time for fat digestion in the upper small intestine.
  • CCK also promotes satiety (feeling of fullness).
  • It does this by stimulating sensory afferent nerve fibers in the duodenum.
  • These signals travel through the vagus nerve to the feeding centers of the brain, helping prevent overeating.

Secretin

  • Secretin was the first gastrointestinal hormone discovered.
  • It is secreted by S cells in the mucosa of the duodenum.
  • It is released when acidic gastric juice enters the duodenum from the pylorus of the stomach.
  • Secretin has a mild effect on gastrointestinal motility.
  • It mainly stimulates pancreatic bicarbonate secretion.
  • Bicarbonate neutralizes the acid in the small intestine.

Glucose-dependent Insulinotropic Peptide (GIP)

  • Glucose-dependent insulinotropic peptide (GIP) is also called gastric inhibitory peptide.
  • It is secreted by the mucosa of the upper small intestine.
  • It is released mainly in response to:
    • Fatty acids
    • Amino acids
  • It is released to a lesser extent by carbohydrates.
  • GIP slightly decreases stomach motor activity.
  • As a result, stomach emptying slows when the upper small intestine already contains a large amount of food.
  • At very low blood levels, even before affecting stomach motility, GIP stimulates insulin secretion.

Motilin

  • Motilin is secreted by the stomach and upper duodenum.
  • It is released during fasting.
  • Its main function is to increase gastrointestinal motility.
  • Motilin is released cyclically.
  • It stimulates interdigestive myoelectric complexes.
  • These are waves of gastrointestinal contractions.
  • They pass through the stomach and small intestine about every 90 minutes in a fasting person.

KEY CONCEPT

  • Gastrointestinal hormones travel through the blood and act on specific receptors.
  • Their effects continue even without nerve connections.
  • Gastrin → Increases gastric acid secretion and gastric mucosal growth.
  • CCK → Contracts the gallbladder, slows stomach emptying, and promotes satiety.
  • Secretin → Stimulates pancreatic bicarbonate secretion to neutralize acid.
  • GIP → Slows stomach emptying and stimulates insulin secretion.
  • Motilin → Increases gastrointestinal motility during fasting by producing interdigestive myoelectric complexes every 90 minutes.

Conceptual Examples

  • Protein enters the stomachGastrin is releasedMore gastric acid is produced.
  • Fat enters the duodenumCCK is releasedGallbladder contracts and stomach emptying slows.
  • Acid enters the duodenumSecretin is releasedPancreas secretes bicarbonate to neutralize the acid.
  • Food overloads the upper small intestineGIP is releasedStomach empties more slowly and insulin secretion increases.
  • During fastingMotilin is released every 90 minutesInterdigestive myoelectric complexes sweep through the stomach and small intestine.

Figure Number: Table 63.1

KEEP IN MIND

  • Interdigestive myoelectric complexes occur approximately every 90 minutes during fasting.

HORMONAL CONTROL OF GASTROINTESTINAL MOTILITY

  • Motilin secretion is inhibited after food is eaten.
  • Glucagon-like peptide-1 (GLP-1) is secreted by intestinal L-cells.
  • The number of L-cells is low in the duodenum and jejunum.
  • The number of L-cells gradually increases toward the lower parts of the intestine.
  • The highest number of L-cells is found in the ileum and colon.
  • The L-cells face the intestinal lumen.
  • Therefore, they directly detect nutrients present inside the intestine.
  • In healthy people, eating carbohydrates or proteins causes a rapid increase in blood GLP-1 levels within 10–15 minutes.
  • GLP-1 reaches its highest level about 30–60 minutes after eating carbohydrates or proteins.
  • Eating fats (lipids) causes a later but longer-lasting increase in GLP-1.
  • The important effects of GLP-1 include:
    • Stimulates insulin secretion in a glucose-dependent manner.
    • Inhibits stomach emptying.
    • Inhibits gastric acid secretion.
    • Promotes satiety (feeling of fullness).
    • Reduces food intake.
  • Besides these gastrointestinal hormones, there are many other peptides and paracrine factors.
  • These substances also affect different gastrointestinal functions, including gastrointestinal motility.
  • Many of these are discussed in later chapters.

KEY CONCEPT

  • Motilin decreases after eating food.
  • GLP-1 is released from intestinal L-cells.
  • L-cells are most numerous in the ileum and colon.
  • Carbohydrates and proteins increase GLP-1 quickly (10–15 minutes), with a peak at 30–60 minutes.
  • Fats produce a later but longer-lasting increase in GLP-1.
  • GLP-1:
    • Increases insulin secretion
    • Slows stomach emptying
    • Decreases gastric acid secretion
    • Increases satiety
    • Reduces food intake

Conceptual Examples

  • After eating carbohydratesGLP-1 rises within 10–15 minutesInsulin secretion increases.
  • After eating a fatty mealGLP-1 rises more slowly but lasts longerStomach empties more slowly and fullness lasts longer.
  • After a mealMotilin secretion decreasesInterdigestive fasting contractions stop.

KEEP IN MIND : GLP-1 rises within 10–15 minutes, peaks at 30–60 minutes after carbohydrates/proteins; motilin is inhibited after food intake.)

MADE BY EASIEST AND SELF LEARNING BY CEO AND FOUNDER DR SHEEN

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